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Mixture of working fluids in ORC plants with pool boiler evaporator

机译:带池锅炉蒸发器的ORC工厂中的工作流体混合物

摘要

Power generation using Organic Rankine Cycle was studied in this paper in case of both low and high temperature cycles, exploiting respectively a geothermal heat source available at 167 °C, and heat available at 300 °C from the combustion of biomass. In particular we assess the feasibility of employing mixture of working fluids, in the case of replacing the typical once-through (OT) evaporator with the pool boiler (PB) technology, typically adopted for pure fluids. The analysis evidenced that in general the OT evaporator shows a slightly improved cycle performance in comparison to the PB and it results in some cases advantageous with respect to the pure working fluid. For instance in case of low temperature cycle, the best thermodynamic performances are obtained with mixture of i-C5 and 75% n-C4 in case of OT evaporator, yielding a recovery efficiency higher than the case with pure i-C5 (7.7 vs. 7.4%) given the relatively higher values of both the recovery factor and cycle efficiency. Implementation of PB did not affect the plant performance significantly which shows the feasibility of having PB with potentially easier control.
机译:本文研究了在低温和高温循环情况下使用有机朗肯循环发电的方法,分别利用了生物质燃烧产生的167thermalC的地热和300CC的热。特别是,在用纯净流体通常采用的池式锅炉(PB)技术代替典型的一次性(OT)蒸发器的情况下,我们评估了使用工作流体混合物的可行性。分析表明,与PB相比,OT蒸发器总体上显示出略微改善的循环性能,并且在某些情况下相对于纯工作流体而言具有优势。例如,在低温循环的情况下,在OT蒸发器的情况下,使用i-C5和75%n-C4的混合物可获得最佳的热力学性能,其回收效率高于纯i-C5的情况(7.7 vs. 7.4%),因为回收率和循环效率都相对较高。 PB的实施不会显着影响工厂的性能,这表明采用PB进行控制可能更容易。

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